Additive manufacturing of oxide-dispersion strengthened alloys: Materials, synthesis and manufacturing

MB Wilms, SK Rittinghaus, M Goßling… - Progress in Materials …, 2023 - Elsevier
Oxide dispersion strengthened (ODS) alloys are characterized by nanoscale oxide particles
homogeneously dispersed in a metallic matrix. They have been developed driven by …

Powder bed fusion additive manufacturing using critical raw materials: A review

VV Popov, ML Grilli, A Koptyug, L Jaworska… - Materials, 2021 - mdpi.com
The term “critical raw materials”(CRMs) refers to various metals and nonmetals that are
crucial to Europe's economic progress. Modern technologies enabling effective use and …

Recent progress in high-entropy alloys for laser powder bed fusion: Design, processing, microstructure, and performance

A Jarlöv, Z Zhu, W Ji, S Gao, Z Hu… - Materials Science and …, 2024 - Elsevier
Laser powder bed fusion (LPBF), as the most commercialized metal additive manufacturing
technique, is tantalizing the metallurgical community owing to its capabilities of directly …

Controlling factors determining flowability of powders for additive manufacturing: A combined experimental and simulation study

Y Zhao, Y Cui, Y Hasebe, H Bian, K Yamanaka… - Powder Technology, 2021 - Elsevier
Powder flowability affects dynamic powder behavior during additive manufacturing and
varies depending on particle size distribution, particle morphology, and surface features. In …

Characterization, preparation, and reuse of metallic powders for laser powder bed fusion: a review

X Sun, M Chen, T Liu, K Zhang, H Wei… - … Journal of Extreme …, 2023 - iopscience.iop.org
Laser powder bed fusion (L-PBF) has attracted significant attention in both the industry and
academic fields since its inception, providing unprecedented advantages to fabricate …

Atomization of metal and alloy powders: Processes, parameters, and properties

SZ Soong, WL Lai, AN Kay Lup - AIChE Journal, 2023 - Wiley Online Library
Additive manufacturing (AM) has been intensively studied over this decade due to the
increasing demand of functional and precise materials in various industries. AM process …

Effects of process parameters and cooling gas on powder formation during the plasma rotating electrode process

Y Cui, Y Zhao, H Numata, K Yamanaka, H Bian… - Powder Technology, 2021 - Elsevier
The plasma rotating electrode process (PREP) is rapidly becoming an important powder
fabrication method in additive manufacturing. However, the low production rate of fine PREP …

Коррозионностойкие стали в аддитивном производстве

АГ Колмаков, АЮ Иванников, МА Каплан… - Известия высших …, 2021 - fermet.misis.ru
Аннотация В данном обзоре рассмотрены основные методы получения сферических
частиц порошка коррозионностойких сталей как материала, широко применяемого во …

A two-decade odyssey in fusion-based additive manufacturing of titanium alloys and composites

SO Agbedor, H Wu, Y Ren, L Liang, DH Yang… - Applied Materials …, 2024 - Elsevier
In the past two decades, the advent of metal additive manufacturing (AM) or three-
dimensional (3D) printing technology has led to exciting breakthroughs in the metallurgy of …

Defect and satellite characteristics of additive manufacturing metal powders

L Xiong, AC Chuang, J Thomas, T Prost, E White… - Advanced Powder …, 2022 - Elsevier
Metal additive manufacturing (AM) requires high-quality metal powders to three-
dimensionally (3D) print metallic components with complex and customizable geometries …